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Chemical composition of particulate and macromolecular dissolved organic matter in the Delaware estuary and experimental diatom blooms: Sources and reactivity patterns.

机译:特拉华河口和实验硅藻水华中颗粒和大分子溶解有机物的化学组成:来源和反应模式。

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To advance our understanding of source contributions and reactivity of carbon within coastal systems, particles and high molecular weight dissolved organic matter (>1 kDa; UDOM) were isolated along a transect from freshwater to the coastal ocean of Delaware Bay for chemical characterization. To examine the composition of UDOM released in the absence of bacteria, an axenic culture of Skeletonema costatum, the dominant species in the Delaware Estuary, was grown to late log-phase. A second culture was grown to senescence in a mesocosm and placed in darkness for 51 days with multiple samples collected during growth and decay. DOM was fractionated by ultrafiltration into high (1–30 kDa; HDOM) and very high (30 kDa-0.2 μm; VHDOM) molecular weights.; Carbohydrates and total hydrolyzable amino acids (THAA) were the major components of dissolved and particulate fractions. In Delaware Bay, carbohydrates comprised 12–43% of POC, 30–56% of VHDOM-C, and 7.5–19% of HDOM-C. THAA comprised 17–38% of POC, 5–12% of VHDOM-C, and 1.5–4% of HDOM-C. Lipids constituted up to 0.3% of HDOM-C, 1.6% of VHDOM-C and 10% of POC; the majority of which were fatty acids. Stable carbon isotopes, fatty acids, sterols and lignin content indicated shifts in sources with terrigenous and planktonic material in the river and turbid region of the estuary and a predominantly algal/planktonic signal in the lower estuary and coastal ocean. Terrigenous organic matter comprised 6.6% of HDOM in the coastal ocean to 34% of HDOM in the turbid region. The flux of terrigenous DOM from the Delaware Estuary to the coastal ocean was estimated at 1.2 × 1010 g OC y−1 and suggests that temperate estuaries can be significant sources of terrigenous organic matter.; Diatom cultures revealed that 28–33% of primary production is released as DOM. Similarities in HDOM and VHDOM composition among estuarine samples and diatom cultures highlight the impact that the source of DOM has on composition versus secondary factors such as grazing and microbial degradation. The lower lipid, amino acid and carbohydrate content and higher β-alanine content in HDOM from the estuary and diatom experiments suggest that this fraction is more degraded relative to POM and VHDOM. This provides geochemical evidence that VHDOM is closer in composition to its biological origin and supports the size-reactivity continuum hypothesis which proposes that lability generally increases with size. Previous work did not examine the range of organic components analyzed in this research nor the subtle changes which occur to POM and DOM as material flows from the river to the ocean.
机译:为了增进我们对沿海系统中碳的来源贡献和反应性的了解,沿从淡水到特拉华湾沿海海洋的样带分离了颗粒和高分子量溶解有机物(> 1 kDa; UDOM)进行化学表征。为了检查在不存在细菌的情况下释放的UDOM的组成,在特拉华河口的优势种 Skeletonema costatum 的无性培养物生长到对数后期。第二种培养物在中膜下生长至衰老,并在黑暗中放置51天,在生长和腐烂过程中收集了多个样品。通过超滤将DOM分为高分子量(1-30 kDa; HDOM)和非常高分子量(30 kDa-0.2μm; VHDOM)。碳水化合物和总可水解氨基酸(THAA)是溶解部分和颗粒部分的主要成分。在特拉华湾,碳水化合物占POC的12-43%,VHDOM-C的30-56%和HDOM-C的7.5-19%。 THAA占POC的17-38%,VHDOM-C的5-12%和HDOM-C的1.5-4%。脂质占HDOM-C的0.3%,VHDOM-C的1.6%和POC的10%;其中大多数是脂肪酸。稳定的碳同位素,脂肪酸,固醇和木质素含量表明,河口和混浊区域的陆源和浮游物质来源发生了变化,而河口和沿海海洋中的藻类/浮游性信号则占主要地位。在沿海海洋中,陆源有机质占HDOM的6.6%,而在混浊区占34%。从特拉华河口到沿海海洋的陆源DOM的通量估计为1.2×10 10 g OC y -1 ,这表明温带河口可能是陆源的重要来源有机物。;硅藻文化表明,初级生产的28–33%是作为DOM释放的。河口样品和硅藻培养物中HDOM和VHDOM组成的相似性凸显了DOM的来源与诸如放牧和微生物降解等次要因素相比对组成的影响。从河口和硅藻实验得出的HDOM中较低的脂质,氨基酸和碳水化合物含量以及较高的β-丙氨酸含量表明,相对于POM和VHDOM,该馏分的降解程度更高。这提供了地球化学证据,表明VHDOM在成分上更接近其生物学起源,并支持了大小反应性连续体假说,该假说提出不稳定性通常随大小而增加。先前的工作没有研究本研究中分析的有机成分的范围,也没有研究当物质从河流流向海洋时,POM和DOM发生的细微变化。

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